LTP 

LTP (Low Throughput Papers) : The number of records in which this modification site was determined using methods other than discovery mass spectrometry.


 HTP 

HTP (High Throughput Papers): The number of records in which this modification site was assigned using ONLY proteomic discovery mass spectrometry.


       human

 
0 1   T2‑p ______MtHFNkGPs
0 2   K6‑ac __MtHFNkGPsyGLS
0 2   K6‑ub __MtHFNkGPsyGLS
0 3   S9‑p tHFNkGPsyGLSAEV
1 18   Y10‑p HFNkGPsyGLSAEVK
0 1   K17 yGLSAEVKNKIASkY
0 6   K23‑ac VKNKIASkYDHQAEE
0 1   K23‑ub VKNKIASkYDHQAEE
0 1   S43‑p IEEVTGMsIGPNFQL
0 2   K64 ILCELINKLQPGSVK
0 4   K156‑ac TRRFDEGkLkAGQsV
0 2   K158‑ub RFDEGkLkAGQsVIG
0 6   K158‑m1 RFDEGkLkAGQsVIG
0 7   S162‑p GkLkAGQsVIGLQMG
0 1   K172‑ub GLQMGTNkCAsQAGM
0 1   K172‑m1 GLQMGTNkCAsQAGM
1 1   S175‑p MGTNkCAsQAGMTAy
0 12   Y182‑p sQAGMTAyGtRRHLY
1 2   T184‑p AGMTAyGtRRHLYDP
0 1   K197 DPKMQTDKPFDQTTI
0 1   K197‑ub DPKMQTDkPFDQTTI
0 1   S205‑p PFDQTTIsLQMGTNk
0 2   K212‑ub sLQMGTNkGAsQAGM
0 9   S215‑p MGTNkGAsQAGMLAP
0 5   T224‑p AGMLAPGtRRDIYDQ
0 6   K232‑ub RRDIYDQkLtLQPVD
0 2   T234‑p DIYDQkLtLQPVDNS
0 1   N240 LtLQPVDNStIsLQM
0 1   T242‑p LQPVDNStIsLQMGT
0 1   S244‑p PVDNStIsLQMGTNk
0 9   K251‑ub sLQMGTNkVAsQkGM
0 3   S254‑p MGTNkVAsQkGMsVy
0 16   K256‑ub TNkVAsQkGMsVyGL
0 2   S259‑p VAsQkGMsVyGLGRQ
1 70   Y261‑p sQkGMsVyGLGRQVY
0 1   K271 GRQVYDPKYCAAPTE
0 10   S285‑p EPVIHNGsQGtGTNG
1 6   T288‑p IHNGsQGtGTNGsEI
2 8   S293‑p QGtGTNGsEIsDSDy
2 12   S296‑p GTNGsEIsDSDyQAE
0 1   S298 NGsEIsDSDyQAEYP
0 5   Y300‑p sEIsDSDyQAEYPDE
0 1   Y308‑p QAEYPDEyHGEYQDD
0 7   Y316‑p HGEYQDDyPRDyQys
0 2   Y320‑p QDDyPRDyQysDQGI
0 5   Y322‑p DyPRDyQysDQGIDY
0 8   S323‑p yPRDyQysDQGIDY_
0 1   Y329 ysDQGIDY_______
  mouse

 
T2 ______MTHFNkGPS
K6 __MTHFNKGPSYGLS
K6‑ub __MTHFNkGPSYGLS
S9 THFNkGPSYGLSAEV
Y10 HFNkGPSYGLSAEVk
K17‑ub YGLSAEVkNKIASkY
K23‑ac VkNKIASkYDQQAEE
K23 VkNKIASKYDQQAEE
G43 IEEVTGLGIGTNFQL
K64‑ub ILCELINkLQPGSVK
K156 TRRFDEGKLkAGQsV
K158‑ub RFDEGKLkAGQsVIG
K158 RFDEGKLKAGQsVIG
S162‑p GKLkAGQsVIGLQMG
K172 GLQMGTNKCASQAGM
K172 GLQMGTNKCASQAGM
S175 MGTNKCASQAGMTAy
Y182‑p SQAGMTAyGtRRHLY
T184‑p AGMTAyGtRRHLYDP
K197 DPKMQTDKPFDQTTI
K197 DPKMQTDKPFDQTTI
S205 PFDQTTISLQMGTNK
K212 SLQMGTNKGASQAGM
S215 MGTNKGASQAGMLAP
T224 AGMLAPGTRRDIYDQ
K232‑ub RRDIYDQkLTLQPVD
T234 DIYDQkLTLQPVDnS
N240‑ng LTLQPVDnSTISLQM
T242 LQPVDnSTISLQMGT
S244 PVDnSTISLQMGTNk
K251‑ub SLQMGTNkVAsQkGM
S254‑p MGTNkVAsQkGMSVy
K256‑ub TNkVAsQkGMSVyGL
S259 VAsQkGMSVyGLGRQ
Y261‑p sQkGMSVyGLGRQVY
K271‑ub GRQVYDPkYCAAPTE
S285 EPVIHNGSQGtGTNG
T288‑p IHNGSQGtGTNGsEI
S293‑p QGtGTNGsEIsDsDy
S296‑p GTNGsEIsDsDyQAE
S298‑p NGsEIsDsDyQAEYP
Y300‑p sEIsDsDyQAEYPDE
Y308 QAEYPDEYHGEYPDD
Y316‑p HGEYPDDyPREyQyG
Y320‑p PDDyPREyQyGDDQG
Y322‑p DyPREyQyGDDQGID
G323 yPREyQyGDDQGIDy
Y330‑p GDDQGIDy_______
  rat

 
T2 ______MTHFNkGPS
K6‑ac __MTHFNkGPSYGLS
K6 __MTHFNKGPSYGLS
S9 THFNkGPSYGLSAEV
Y10 HFNkGPSYGLSAEVK
K17 YGLSAEVKNKIASKY
K23 VKNKIASKYDQQAEE
K23 VKNKIASKYDQQAEE
G43 IEEVTGMGIGTNFQL
K64 ILCELINKLQPGSVK
K156‑ac TRRFDEGkLKAGQSV
K158 RFDEGkLKAGQSVIG
K158 RFDEGkLKAGQSVIG
S162 GkLKAGQSVIGLQMG
K172 GLQMGTNKCAsQAGM
K172 GLQMGTNKCAsQAGM
S175‑p MGTNKCAsQAGMTAY
Y182 sQAGMTAYGtRRHLY
T184‑p AGMTAYGtRRHLYDP
K197‑ac DPKMQTDkPFDQTTI
K197 DPKMQTDKPFDQTTI
S205 PFDQTTISLQMGTNK
K212 SLQMGTNKGASQAGM
S215 MGTNKGASQAGMSAP
T224 AGMSAPGTRRDIYDQ
K232 RRDIYDQKLTLQPVD
T234 DIYDQKLTLQPVDNS
N240 LTLQPVDNSTISLQM
T242 LQPVDNSTISLQMGT
S244 PVDNSTISLQMGTNK
K251 SLQMGTNKVASQKGM
S254 MGTNKVASQKGMSVy
K256 TNKVASQKGMSVyGL
S259 VASQKGMSVyGLGRQ
Y261‑p SQKGMSVyGLGRQVY
K271 GRQVYDPKYCAAPTE
S285 EPVIHNGSQGTGTNG
T288 IHNGSQGTGTNGsEI
S293‑p QGTGTNGsEISDSDY
S296 GTNGsEISDSDYQAE
S298 NGsEISDSDYQAEYP
Y300 sEISDSDYQAEYPDE
Y308 QAEYPDEYHGEYPDE
Y316 HGEYPDEYPREYQYG
Y320 PDEYPREYQYGDDQG
Y322 EYPREYQYGDDQGID
G323 YPREYQYGDDQGIDY
Y330 GDDQGIDY_______